Literature DB >> 22609483

How mechanisms of perceptual decision-making affect the psychometric function.

Joshua I Gold1, Long Ding.   

Abstract

Psychometric functions are often interpreted in the context of Signal Detection Theory, which emphasizes a distinction between sensory processing and non-sensory decision rules in the brain. This framework has helped to relate perceptual sensitivity to the "neurometric" sensitivity of sensory-driven neural activity. However, perceptual sensitivity, as interpreted via Signal Detection Theory, is based on not just how the brain represents relevant sensory information, but also how that information is read out to form the decision variable to which the decision rule is applied. Here we discuss recent advances in our understanding of this readout process and describe its effects on the psychometric function. In particular, we show that particular aspects of the readout process can have specific, identifiable effects on the threshold, slope, upper asymptote, time dependence, and choice dependence of psychometric functions. To illustrate these points, we emphasize studies of perceptual learning that have identified changes in the readout process that can lead to changes in these aspects of the psychometric function. We also discuss methods that have been used to distinguish contributions of the sensory representation versus its readout to psychophysical performance.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 22609483      PMCID: PMC3445702          DOI: 10.1016/j.pneurobio.2012.05.008

Source DB:  PubMed          Journal:  Prog Neurobiol        ISSN: 0301-0082            Impact factor:   11.685


  232 in total

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6.  Relationships between the threshold and slope of psychometric and neurometric functions during perceptual learning: implications for neuronal pooling.

Authors:  Joshua I Gold; Chi-Tat Law; Patrick Connolly; Sharath Bennur
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  32 in total

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7.  Visual Selective Attention in Mice.

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8.  Unsupervised changes in core object recognition behavior are predicted by neural plasticity in inferior temporal cortex.

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9.  The basal ganglia's contributions to perceptual decision making.

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10.  Lapses in perceptual decisions reflect exploration.

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